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Influence of lightning impulse voltages on power output characteristics of Photovoltaic modules

机译:雷电冲击电压对光伏组件功率输出特性的影响

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The capacity of the Photovoltaic (PV) power system is growing rapidly in the last decade. PV power systems are installed outdoors and are intended to be directly exposed to sunlight. During their operation, the PV modules are subjected to all types of climate stresses. These include temperature, UV, humidity, chemical erosion, and mechanical stresses. When the PV power systems are installed in an area where lightning events are observed, they are under the stress of direct lightning or lightning induced voltages. The focus of this research was to study the effect of lightning impulse voltages on the power output of the PV module. The paper investigated a type of 1.5 W, 6 V polycrystalline silicon PV modules. Their Maximum Power Output (MPO) were compared after they had been stressed repeatedly with different levels of lightning impulse voltages. The results revealed the MPO drops exponentially with the application of lightning impulse voltages.
机译:光伏(PV)电源系统的容量在过去十年中迅速增长。光伏电源系统安装在室外,旨在直接暴露在阳光下。在运行过程中,光伏组件会遭受各种类型的气候压力。其中包括温度,紫外线,湿度,化学腐蚀和机械应力。当将光伏电源系统安装在观察到雷击事件的区域时,它们将承受直接雷电或雷电感应电压的压力。这项研究的重点是研究雷电冲击电压对PV模块功率输出的影响。本文研究了一种类型的1.5 W,6 V多晶硅PV组件。在用不同级别的雷电冲击电压反复对其施加压力后,对它们的最大功率输出(MPO)进行了比较。结果表明,雷电冲击电压的作用下,MPO呈指数下降。

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